目的利用免疫缺陷的NOD-Scid小鼠建立播散性弥漫大B细胞淋巴瘤(diffuse large B-cell lymphoma,DLBCL)小鼠模型,为动物模型的构建提供新思路。方法先将人源DLBCL细胞OCI-Ly8导入荧光素酶基因,使其长期稳定表达荧光素酶。再将OCI-Ly8-luc...目的利用免疫缺陷的NOD-Scid小鼠建立播散性弥漫大B细胞淋巴瘤(diffuse large B-cell lymphoma,DLBCL)小鼠模型,为动物模型的构建提供新思路。方法先将人源DLBCL细胞OCI-Ly8导入荧光素酶基因,使其长期稳定表达荧光素酶。再将OCI-Ly8-luc^(+)细胞经尾静脉注射到NOD-Scid小鼠体内,利用生物发光成像系统每隔3天观察1次小鼠体内肿瘤细胞播散情况。结果实验第7天监测到OCI-Ly8-luc^(+)细胞在小鼠体内发生播散,并且进展迅速,20天时出现小鼠死亡。结论利用OCI-Ly8-luc^(+)细胞尾静脉注射成功构建了NOD-Scid小鼠DLBCL模型,为DLBCL的动物模型构建提供新方法。展开更多
Purpose: To establish model of retinoblastoma subcutaneously in NOD-SCID mice and study rules of formation and distribution of retinoblastoma metastasis.Methods: Retinoblastoma cells SO-RB50 were inoculated subcutaneo...Purpose: To establish model of retinoblastoma subcutaneously in NOD-SCID mice and study rules of formation and distribution of retinoblastoma metastasis.Methods: Retinoblastoma cells SO-RB50 were inoculated subcutaneously in NOD-SCID mice. Animal acts and tumor formation, growth and metastasis in NOD-SCID mice were observed. Primary and metastatic tumors were studied pathohistologically by HE and immunohistochemical staining.Results: The latent periods of tumor growth were 12~19 days and the taken rate of tumor was 100%. 32 days later, 5 NOD-SCID mice were found with tumors that had metastasized to areas mainly located in the abdominal cavity and the side of the kidney; the metastatic time of tumors in the mice also differed. The tumor cells of the primary nodules and the metastasis were similar with human retinoblastoma cells and positive in immunohistochemical staining of NSE.Conclusion: The subcutaneous model of retinoblastoma in NOD-SCID mice showed a high taken rate and a short latent period of tumor, which had a high metastatic rate and was the best model in research of behaviors of retinoblastoma at present.展开更多
Recently we have established a new culture condition enabling the derivation of extended pluripotent stem(EPS)cells,which,compared to conventional pluripotent stem cells,possess superior developmental potential and ge...Recently we have established a new culture condition enabling the derivation of extended pluripotent stem(EPS)cells,which,compared to conventional pluripotent stem cells,possess superior developmental potential and germline competence.However,it remains unclear whether this condition permits derivation of EPS cells from mouse strains that are refractory or non-permissive to pluripotent cell establishment.Here,we show that EPS cells can be robustly generated from non-permissive NOD-sc/d Il2rg 1 mice through de novo derivation from blastocysts.Furthermore,these cells can also be efficiently generated by chemical reprogramming from embryonic NOD-sc/d II2rg-/-fibroblasts.NOD-sc/d II2rg-/-EPS cells can be expanded for more than 20 passages with genomic stability and can be genetically modified through gene targeting.Notably,these cells contribute to both embryonic and extraembryonic lineages in vivo.More importantly,they can produce chimeras and integrate into the E13.5 genital ridge.Our study demonstrates the feasibility of generating EPS cells from refractory mouse strains,which could potentially be a general strategy for deriving mouse pluripotent cells.The generation of NOD-sc/d II2rg-/-Yaqin Du and Ting Wang contributed equally to this work.Electronic supplementary material The online version of this article(https://doi.org/10.1007/s13238-018-0558-z)contains supplementary material,which is available to authorized users.EPS cell lines permits sophisticated genetic modification in NOD-scid II2rg-/-mice,which may greatly advance the optimization of humanized mouse models for biomedical applications.展开更多
文摘目的利用免疫缺陷的NOD-Scid小鼠建立播散性弥漫大B细胞淋巴瘤(diffuse large B-cell lymphoma,DLBCL)小鼠模型,为动物模型的构建提供新思路。方法先将人源DLBCL细胞OCI-Ly8导入荧光素酶基因,使其长期稳定表达荧光素酶。再将OCI-Ly8-luc^(+)细胞经尾静脉注射到NOD-Scid小鼠体内,利用生物发光成像系统每隔3天观察1次小鼠体内肿瘤细胞播散情况。结果实验第7天监测到OCI-Ly8-luc^(+)细胞在小鼠体内发生播散,并且进展迅速,20天时出现小鼠死亡。结论利用OCI-Ly8-luc^(+)细胞尾静脉注射成功构建了NOD-Scid小鼠DLBCL模型,为DLBCL的动物模型构建提供新方法。
基金This project was supported by a project grand of the Science and Technology of Guangdong Province (2003A3020302).
文摘Purpose: To establish model of retinoblastoma subcutaneously in NOD-SCID mice and study rules of formation and distribution of retinoblastoma metastasis.Methods: Retinoblastoma cells SO-RB50 were inoculated subcutaneously in NOD-SCID mice. Animal acts and tumor formation, growth and metastasis in NOD-SCID mice were observed. Primary and metastatic tumors were studied pathohistologically by HE and immunohistochemical staining.Results: The latent periods of tumor growth were 12~19 days and the taken rate of tumor was 100%. 32 days later, 5 NOD-SCID mice were found with tumors that had metastasized to areas mainly located in the abdominal cavity and the side of the kidney; the metastatic time of tumors in the mice also differed. The tumor cells of the primary nodules and the metastasis were similar with human retinoblastoma cells and positive in immunohistochemical staining of NSE.Conclusion: The subcutaneous model of retinoblastoma in NOD-SCID mice showed a high taken rate and a short latent period of tumor, which had a high metastatic rate and was the best model in research of behaviors of retinoblastoma at present.
基金the National Key Research and Development Program of China(2016YFA01001002017YFA0103000)+4 种基金the National Natural Science Foundation of China(Grant Nos.31730059 and 31521004)the Guangdong Innovative and En trepreneurial Research Team Program(2014ZT05S216)the Science and Technology Planning Project of Guangdong Province,China(2014B020226001 and 2016B030232001)the Science and Technology Program of Guangzhou,China(201508020001)National Natural Science Foundation of China(Grant No.31571052).
文摘Recently we have established a new culture condition enabling the derivation of extended pluripotent stem(EPS)cells,which,compared to conventional pluripotent stem cells,possess superior developmental potential and germline competence.However,it remains unclear whether this condition permits derivation of EPS cells from mouse strains that are refractory or non-permissive to pluripotent cell establishment.Here,we show that EPS cells can be robustly generated from non-permissive NOD-sc/d Il2rg 1 mice through de novo derivation from blastocysts.Furthermore,these cells can also be efficiently generated by chemical reprogramming from embryonic NOD-sc/d II2rg-/-fibroblasts.NOD-sc/d II2rg-/-EPS cells can be expanded for more than 20 passages with genomic stability and can be genetically modified through gene targeting.Notably,these cells contribute to both embryonic and extraembryonic lineages in vivo.More importantly,they can produce chimeras and integrate into the E13.5 genital ridge.Our study demonstrates the feasibility of generating EPS cells from refractory mouse strains,which could potentially be a general strategy for deriving mouse pluripotent cells.The generation of NOD-sc/d II2rg-/-Yaqin Du and Ting Wang contributed equally to this work.Electronic supplementary material The online version of this article(https://doi.org/10.1007/s13238-018-0558-z)contains supplementary material,which is available to authorized users.EPS cell lines permits sophisticated genetic modification in NOD-scid II2rg-/-mice,which may greatly advance the optimization of humanized mouse models for biomedical applications.